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Lack of the Nlrp3 Inflammasome Improves Mice Recovery Following Traumatic Brain Injury

机译:Nlrp3炎症小体的缺乏改善了颅脑外伤后小鼠的恢复。

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Treatment for traumatic brain injury (TBI) remains elusive despite compelling evidence from animal models for a variety of therapeutic targets. The activation of the NLRP3 (Nucleotide-binding oligomerization domain-like receptor family pyrin domain-containing 3) inflammasome has been proposed as key point in the brain damage associated with TBI. NLRP3 was tested as potential target for reducing neuronal loss and promoting functional recovery in a mouse model of TBI. Male NLRP3-/- (n = 20) and wild type (n=27) mice were used. A closed TBI model was performed and inflammatory and apoptotic markers were evaluated. A group of WT mice also received BAY 11-7082, a NLRP3 inhibitor, to further evaluate the role of this pathway. At 24 hrs following TBI NLRP3-/- animals demonstrated a preserved cognitive function as compared to WT mice, additionally brain damage was less severe and the inflammatory mediators were reduced in brain lysates. The administration of BAY 11-7082 in WT animals subjected to TBI produced overlapping results. At day 7 histology revealed a more conserved brain structure with reduced damage in TBI NLRP3-/- animals compared to WT. Our data indicate that the NLRP3 pathway might be exploited as molecular target for the short-term sequelae of TBI.
机译:尽管从动物模型中获得了多种治疗靶点的有力证据,但创伤性脑损伤(TBI)的治疗仍然难以捉摸。 NLRP3(结合核苷酸的寡聚化域样受体家族,含吡喃结构域的3)炎性小体的激活被认为是与TBI相关的脑损伤的关键点。 NLRP3被测试为在TBI小鼠模型中减少神经元丢失和促进功能恢复的潜在靶标。使用雄性NLRP3-/-(n = 20)和野生型(n = 27)小鼠。进行了封闭的TBI模型,并评估了炎症和凋亡标记。一组野生型小鼠还接受了NLRP3抑制剂BAY 11-7082,以进一步评估该途径的作用。与野生型小鼠相比,在TBI后24小时,NLRP3-/-动物表现出保留的认知功能,另外,脑损伤程度较小,并且脑溶解物中的炎症介质减少。在经受TBI的野生动物中施用BAY 11-7082产生重叠的结果。在第7天,组织学发现与WT相比,TBI NLRP3-/-动物的大脑结构更保守,损伤减少。我们的数据表明,NLRP3途径可能被用作TBI短期后遗症的分子靶标。

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